Fumigation treatment device based on Mongolian medicine treatment
By designing the reciprocating movement, swing and tapping massage of the fumigation nozzle, the problems of small drug contact area and local compression in the drug fumigation device are solved, dynamic fumigation is achieved, and the effect of fumigation treatment and patient comfort is improved.
Patent Information
- Application Number
- CN202510461016.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2025-07-11
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When the existing drug fumigation device fumigates the patient's back, the arrangement of the grid is too precise, resulting in a decrease in the contact area between the drug and the skin. The long-term single position of compression between the grid and the skin leads to poor blood circulation, affecting the fumigation treatment effect and patient comfort.
A fumigation treatment device including a fumigation mechanism, a swing mechanism and a tapping mechanism is designed. Through the reciprocating movement, swing and tapping massage of the fumigation nozzle, the contact area between the drug and the skin is increased, local compression is avoided, and the penetration efficiency of the drug is improved.
Dynamic fumigation is achieved, increasing the contact area between the drug and the skin, avoiding local compression, improving the effect of fumigation treatment and the comfort of the patient, and maintaining a high concentration of the drug in the affected area, significantly improving the treatment effect.
Smart Images

Figure CN120284701A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of fumigation treatment devices, and particularly relates to a fumigation treatment device for Mongolian medicine treatment. Background Art
[0002] Mongolian medicine, also known as Mongolian medicine science, is the summary of the Mongolian people's long-term experience in fighting diseases, and gradually formed by absorbing the experience of traditional Chinese medicine and Tibetan medicine; there are various diagnostic methods and treatment methods in Mongolian medicine; Mongolian medicine is similar to traditional Chinese medicine, mainly composed of herbal medicines, which are made by grinding various herbal medicines into medicinal powders; ready-made medicines are mostly used for treating diseases, and diet therapy, moxibustion therapy, fomentation therapy, seboso therapy, skin therapy, hot spring therapy, acupuncture and bloodletting therapy, massage therapy, fumigation therapy and other methods have been summarized; fumigation therapy is a commonly used and practical treatment method, which mainly steams Mongolian medicinal materials, and makes the medicinal components penetrate through the skin to introduce the medicine into the body, so as to achieve the purpose of treating diseases; When the existing drug fumigation device fumigates the patient's back, the patient lies on the wooden grille in the middle of the treatment bed, and the Mongolian medicinal materials are steamed below, so that the volatilized medicinal components contact the back skin of the human body, and then the medicine is introduced into the body through skin penetration; However, the grille part supporting under the person is very closely attached to the skin, so that even the vaporized medicinal components are very difficult to contact this part of the skin and be absorbed through percutaneous penetration. Moreover, in order not to make the human body feel uncomfortable, the arrangement of the grille is relatively precise, intending to expand the contact area with the human body to reduce local pressure; this will further reduce the contact area between the medicine and the skin, and during the fumigation process, the long-term single-position compression between the grille and the skin will cause poor blood circulation and also cause discomfort to the human body, thus affecting the effect of fumigation treatment; Based on this, the present invention provides a fumigation treatment device for Mongolian medicine treatment to solve the problems raised in the above background art. Summary of the Invention
[0003] The present invention aims at the above problems and provides a fumigation treatment device for Mongolian medicine treatment, which solves the problems that when the existing drug fumigation device fumigates the patient's back, the arrangement of the grille is relatively precise, intending to expand the contact area with the human body to reduce local pressure, which will further reduce the contact area between the medicine and the skin, and during the fumigation process, the long-term single-position compression between the grille and the skin will cause poor blood circulation and also cause discomfort to the human body, thus affecting the effect of fumigation treatment.
[0004] The technical solution of the present invention is: a fumigation treatment device for Mongolian medicine treatment, including a bed board, support legs, a U-shaped plate, a mounting plate, a spring telescopic rod, a threaded rod, a rotating handle, and a moving plate; Four supporting legs are respectively provided under the bed board. An installation plate is provided between two of the supporting legs on the same side. A through first through groove is provided on the bed board above the installation plate. Two vertical plates of a U-shaped plate respectively slide through the two first through grooves. One end of the vertical plate of the U-shaped plate is connected to the first end of a spring telescopic rod, and the second end of the spring telescopic rod is connected to the installation plate. The first end of a threaded rod threadedly penetrates through the other vertical plate of the U-shaped plate, and the second end of the threaded rod rotatably penetrates through the installation plate and is connected to a rotating handle; A moving plate is slidably arranged between the two vertical plates of the U-shaped plate; A fumigation mechanism for reciprocating fumigation is provided on the moving plate; A swinging mechanism for driving swinging fumigation is provided between the moving plate and the fumigation mechanism, and the swinging mechanism is driven by the fumigation mechanism; Knocking mechanisms for alternately knocking and massaging are provided on both sides of the fumigation mechanism, and the knocking mechanisms are driven by the swinging mechanism.
[0005] Further, the fumigation mechanism includes a fumigation medicine box, a filling port, a conveying hose, a shunt pipe, a moving plate, a driving member, a first rotating shaft, a first fixing plate, a moving frame, a sector gear, a first tooth plate, a second tooth plate, a first gear, a second rotating shaft, a first rotating rod, a second rotating rod, a first moving rod, a fumigation nozzle, a rotating pipe; One end of the horizontal plate of the U-shaped plate is connected to a first fixing plate. A moving frame is slidably arranged on the first fixing plate. A sector gear is arranged in the moving frame. The first end of a first rotating shaft is connected to the sector gear. The second end of the first rotating shaft rotatably penetrates through the first fixing plate and is connected to the output end of the driving member. First tooth plates are arranged in the moving frame on both sides of the sector gear, and the sector gear is detachably meshed and connected to the two first tooth plates respectively; A second tooth plate is arranged outside the moving frame close to the horizontal plate of the U-shaped plate. A first gear meshing with the second tooth plate is arranged outside the second tooth plate. A second rotating shaft penetrates through the first gear. The first end of the second rotating shaft is rotatably connected to the first fixing plate, and the second end of the second rotating shaft is sleeved with the first end of a first rotating rod. The second end of the first rotating rod is rotatably connected to the first end of a second rotating rod; A second through groove is provided on the horizontal plate of the U-shaped plate above the moving plate. The first end of a first moving rod is connected to the outside of the moving plate far from the first fixing plate, and the second end of the first moving rod slidably penetrates through the second through groove and is rotatably connected to the second end of the second rotating rod; A fumigation medicine box is arranged on the first fixing plate behind the first gear. A filling port is arranged on the fumigation medicine box; A third through groove is provided in the moving plate, and a shunt pipe is rotatably provided in the third through groove. A plurality of fumigation nozzles are respectively provided on the shunt pipe. A first end of a rotating pipe is connected in a through manner to the shunt pipe behind the plurality of fumigation nozzles. A first end of a conveying hose is connected in a through manner to a second end of the rotating pipe, and a second end of the conveying hose penetrates through the first fixing plate and is connected in a through manner to the bottom of the fumigation medicine box; The moving plate operates through a moving drive swinging mechanism.
[0006] Further, the swinging mechanism includes a third toothed plate, a second gear, a third rotating shaft, a third rotating rod, a fourth rotating rod, and a second fixing plate; A second fixing plate is provided on the outer side of the moving plate behind the first moving rod. A third rotating shaft is rotatably penetrated through the second fixing plate. A second gear is sleeved on a first end of the third rotating shaft. A third toothed plate is provided on a cross plate of the U-shaped plate above the second gear, and the third toothed plate is meshed and connected with the second gear; A second end of the third rotating shaft is vertically connected to a first end of a third rotating rod. A second end of the third rotating rod is rotatably connected to a first end of a fourth rotating rod. A second end of the fourth rotating rod and a connection part of the rotating pipe and the conveying hose are rotatably connected; The third rotating shaft operates through a rotating drive knocking mechanism.
[0007] Further, the knocking mechanism includes a knocking head, a first bevel gear, a second bevel gear, a fourth rotating shaft, a fifth rotating rod, a sixth rotating rod, a fifth rotating shaft, a seventh rotating rod, a second moving rod, a rotating plate, and a third fixing plate; Third fixing plates are respectively provided above the moving plate on both sides of the third through groove. A plurality of knocking heads are respectively connected below the third fixing plates, and the plurality of knocking heads all slidably penetrate through the moving plate; A first bevel gear is sleeved on a first end of the third rotating shaft penetrating through the second gear. A second bevel gear engaged with the first bevel gear is provided on one side of the first bevel gear. A first end of a fourth rotating shaft is connected to the second bevel gear. A second end of the fourth rotating shaft rotatably penetrates through the first moving rod and is vertically connected to a first end of a fifth rotating rod; A first end of a fifth rotating shaft is rotatably connected to the first moving rod below the fifth rotating rod. A middle part of the rotating plate is vertically connected to a second end of the fifth rotating shaft. First ends of seventh rotating rods are respectively rotatably connected to both ends of the rotating plate. A first end of a second moving rod is hinged to a second end of each of the seventh rotating rods, and second ends of the two second moving rods are respectively hinged to the third fixing plate; A second end of the sixth rotating rod is hinged to a connection part of the rotating plate and the seventh rotating rod close to the first moving rod.
[0008] Further, the driving part is a motor.
[0009] Furthermore, a first T-shaped sliding groove is provided on the first fixing plate, a first T-shaped protrusion matching with the first T-shaped sliding groove is provided on the moving frame, and the first T-shaped protrusion is slidably connected in the first T-shaped sliding groove.
[0010] Furthermore, second T-shaped sliding grooves are provided on both vertical plates of the U-shaped plate, second T-shaped protrusions matching with the second T-shaped sliding grooves are provided on the moving plate, and the second T-shaped protrusions are slidably connected in the second T-shaped sliding grooves.
[0011] Advantages of the present invention: By providing a fumigation mechanism, the present invention realizes the reciprocating left and right movement of the fumigation nozzle for dynamically fumigating the back skin of the patient, avoiding the situation that the direction of the fumigated vapor ejected during fumigation is relatively fixed, causing discomfort to the back skin of the patient and resulting in poor fumigation effect; by providing a swinging mechanism, while realizing the reciprocating left and right movement of the fumigation nozzle for dynamically fumigating the back skin of the patient, the fumigation nozzle swings to increase the range of dynamic fumigation of the back skin of the patient, preventing the relatively precise arrangement of the gratings, intending to expand the contact area with the human body to reduce local pressure, which will further cause the reduction of the contact area between the drug and the skin, and during the fumigation process, the long-term single-position compression between the gratings and the skin will lead to poor blood circulation, further accelerating the recovery of the patient; by providing a knocking mechanism, while realizing the reciprocating left and right movement of the fumigation nozzle for dynamically fumigating the back skin of the patient and the swinging of the fumigation nozzle to increase the range of dynamic fumigation of the back skin of the patient, several knocking heads at both ends reciprocate up and down alternately to knock and massage the back of the patient while fumigating the back of the patient, so as to accelerate the effective penetration of drug ions, make the medicinal power reach the lesion directly, keep a high concentration of the drug at the affected part, effectively improve the treatment effect of the patient, and the treatment effect on the patient is remarkable, increasing the practicability of the device; the structure of the present invention is simple and reliable, has a good fumigation treatment effect, is convenient to control, and is suitable for popularization.
[0012] In addition to the purposes, features and advantages described above, the present invention has other purposes, features and advantages. The present invention will be further described in detail below with reference to the drawings. Description of the Drawings
[0013] The drawings forming a part of this application are used to provide a further understanding of the present invention. The schematic embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention.
[0014] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the installation of the rotating handle of the present invention; Figure 3 It is a schematic diagram of the installation of the first rotating rod of the present invention; Figure 4 It is a schematic diagram of the installation of the percussion head of the present invention; Figure 5 It is a schematic diagram of the installation of the third rotating shaft of the present invention; Figure 6 It is a schematic diagram of the installation of the fifth rotating rod of the present invention; Figure 7 It is a schematic diagram of the installation of the fourth rotating rod of the present invention.
[0015] Reference numerals: 1 is a bed board, 101 is a support leg, 102 is a U-shaped plate, 103 is a mounting plate, 104 is a spring telescopic rod, 105 is a threaded rod, 106 is a rotating handle, 107 is a fumigation medicine box, 108 is a filling port, 109 is a delivery hose, 1010 is a shunt pipe, 2 is a moving plate, 21 is a driving member, 22 is a first rotating shaft, 23 is a first fixing plate, 24 is a moving frame, 25 is a sector gear, 26 is a first toothed plate, 27 is a second toothed plate, 28 is a first gear, 29 is a second rotating shaft, 210 is a first rotating rod, 211 is a second rotating rod, 212 is a first moving rod, 3 is a fumigation nozzle, 31 is a third toothed plate, 32 is a second gear, 33 is a third rotating shaft, 34 is a third rotating rod, 35 is a fourth rotating rod, 36 is a second fixing plate, 37 is a rotating pipe, 4 is a percussion head, 41 is a first bevel gear, 42 is a second bevel gear, 43 is a fourth rotating shaft, 44 is a fifth rotating rod, 45 is a sixth rotating rod, 46 is a fifth rotating shaft, 47 is a seventh rotating rod, 48 is a second moving rod, 49 is a rotating plate, 410 is a third fixing plate. Detailed implementation manners
[0016] In order to make the purpose, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0017] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.
[0018] Reference Figures 1 to 7, A fumigation treatment device for Mongolian medicine treatment, including a bed board 1, support legs 101, a U-shaped plate 102, a mounting plate 103, a spring telescopic rod 104, a threaded rod 105, a rotating handle 106, and a moving plate 2; Four support legs 101 are respectively installed under the bed board 1; the bed board 1 is used for installing the support legs 101; the support legs 101 are used for supporting the bed board 1. A mounting plate 103 is installed between two support legs 101 on the same side. A through first through groove is provided on the bed board 1 above the mounting plate 103. Two vertical plates of the U-shaped plate 102 slide through the two first through grooves respectively. The first end of a spring telescopic rod 104 is connected to the lower part of one vertical plate of the U-shaped plate 102, and the second end of the spring telescopic rod 104 is connected to the mounting plate 103; the mounting plate 103 is used for installing the spring telescopic rod 104; the spring telescopic rod 104 is used to ensure the stable movement of the U-shaped plate 102. The first end of a threaded rod 105 is threadedly penetrated through the lower part of the other vertical plate of the U-shaped plate 102, and the second end of the threaded rod 105 rotatably penetrates through the mounting plate 103 and is connected to a rotating handle 106; Preferably, when the heights of the patients' backs are different, the medical staff rotates the rotating handle 106. The rotation of the rotating handle 106 drives the threaded rod 105 to rotate. The rotation of the threaded rod 105 drives the U-shaped plate 102 to move. The movement of the U-shaped plate 102 is used to adjust the distance between the subsequent fumigation nozzle 3 and the patients' back skin, thereby improving the overall effect of fumigation; A moving plate 2 is slidably installed between the two vertical plates of the U-shaped plate 102; A fumigation mechanism for reciprocating fumigation is installed on the moving plate 2; A swing mechanism for driving swing fumigation is installed between the moving plate 2 and the fumigation mechanism. The swing mechanism is driven by the fumigation mechanism; Knocking mechanisms for alternately knocking and massaging are installed on both sides of the fumigation mechanism. The knocking mechanisms are driven by the swing mechanism; The fumigation mechanism includes a fumigation medicine box 107, a filling port 108, a delivery hose 109, a shunt pipe 1010, a moving plate 2, a driving member 21, a first rotating shaft 22, a first fixing plate 23, a moving frame 24, a sector gear 25, a first toothed plate 26, a second toothed plate 27, a first gear 28, a second rotating shaft 29, a first rotating rod 210, a second rotating rod 211, a first moving rod 212, a fumigation nozzle 3, and a rotating pipe 37; One end of the horizontal plate of the U-shaped plate 102 is connected with a first fixed plate 23, and a moving frame 24 is slidably installed on the first fixed plate 23; the first fixed plate 23 is used for installing the moving frame 24, a sector gear 25 is installed in the moving frame 24, and a first end of a first rotating shaft 22 is connected to the sector gear 25. A second end of the first rotating shaft 22 rotatably passes through the first fixed plate 23 and is connected to an output end of a driving member 21; the driving member 21 is a commercially available motor. First toothed plates 26 are installed in the moving frame 24 on both sides of the sector gear 25, and the sector gear 25 is detachably and meshingly connected to the two first toothed plates 26 respectively; A second toothed plate 27 is installed on the outer side of the moving frame 24 close to the horizontal plate of the U-shaped plate 102, a first gear 28 meshing with the second toothed plate 27 is installed on the outer side of the second toothed plate 27, a second rotating shaft 29 passes through the first gear 28, a first end of the second rotating shaft 29 is rotatably connected to the first fixed plate 23, and a first end of a first rotating rod 210 is fixedly sleeved on a second end of the second rotating shaft 29. A first end of a second rotating rod 211 is rotatably connected to a second end of the first rotating rod 210; A second through groove is provided on the horizontal plate of the U-shaped plate 102 above the moving plate 2. A first end of a first moving rod 212 is connected to the outside of the moving plate 2 far from the first fixed plate 23, and a second end of the first moving rod 212 slidably passes through the second through groove and is rotatably connected to a second end of the second rotating rod 211; A fumigation medicine box 107 is installed on the first fixed plate 23 behind the first gear 28, and a filling port 108 is installed on the fumigation medicine box 107; the filling port 108 is used for adding fumigation liquid medicine; A third through groove is provided in the moving plate 2, a shunt pipe 1010 is rotatably installed in the third through groove, a plurality of fumigation nozzles 3 are respectively installed on the shunt pipe 1010, a first end of a rotating pipe 37 is connected to the shunt pipe 1010 behind the plurality of fumigation nozzles 3 in a through manner, and a first end of a conveying hose 109 is connected to a second end of the rotating pipe 37 in a through manner. A second end of the conveying hose 109 passes through the first fixed plate 23 and is connected to the bottom of the fumigation medicine box 107 in a through manner; the conveying hose 109, the shunt pipe 1010, and the rotating pipe 37 cooperate to convey the liquid medicine; The moving plate 2 works through a moving drive swing mechanism; Preferably, the driving member 21 drives the first rotating shaft 22 to rotate. The rotation of the first rotating shaft 22 drives the sector gear 25 to rotate. The rotation of the sector gear 25 drives the two first toothed plates 26 to reciprocate back and forth. The reciprocating movement of the two first toothed plates 26 drives the moving frame 24 to reciprocate back and forth. The reciprocating movement of the moving frame 24 drives the second toothed plate 27 to reciprocate back and forth. The reciprocating movement of the second toothed plate 27 drives the first gear 28 to rotate reciprocally. The reciprocal rotation of the first gear 28 drives the second rotating shaft 29 to rotate reciprocally. The reciprocal rotation of the second rotating shaft 29 drives the first rotating rod 210 to rotate reciprocally. The reciprocal rotation of the first rotating rod 210 drives the second rotating rod 211 to rotate reciprocally. The reciprocal rotation of the second rotating rod 211 drives the first moving rod 212 to reciprocate left and right. The reciprocal left and right movement of the first moving rod 212 drives the moving plate 2 to reciprocate left and right. The reciprocal left and right movement of the moving plate 2 drives the shunt pipe 1010 to reciprocate left and right. The reciprocal left and right movement of the shunt pipe 1010 drives the fumigation nozzle 3 to reciprocate left and right. The reciprocal left and right movement of the fumigation nozzle 3 is used to dynamically fumigate the back skin of the patient, avoiding the situation that the direction of the fumigation vapor spray is relatively fixed during fumigation, causing discomfort to the back skin of the patient and resulting in poor fumigation effect; The swing mechanism includes a third toothed plate 31, a second gear 32, a third rotating shaft 33, a third rotating rod 34, a fourth rotating rod 35, and a second fixing plate 36; A second fixing plate 36 is installed on the outer side of the moving plate 2 at the rear side of the first moving rod 212. The third rotating shaft 33 is rotatably penetrated through the second fixing plate 36. The second fixing plate 36 is used to install the third rotating shaft 33. A second gear 32 is fixedly sleeved on the first end of the third rotating shaft 33. A third toothed plate 31 is installed on the horizontal plate of the U-shaped plate 102 above the second gear 32. The third toothed plate 31 is meshed and connected with the second gear 32; The second end of the third rotating shaft 33 is vertically connected to the first end of the third rotating rod 34. The second end of the third rotating rod 34 is rotatably connected to the first end of the fourth rotating rod 35. The second end of the fourth rotating rod 35 is rotatably connected to the connection part of the rotating pipe 37 and the conveying hose 109; The third rotating shaft 33 drives the percussion mechanism to work through rotation; Preferably, since a second fixing plate 36 is installed on the outer side of the moving plate 2 at the rear side of the first moving rod 212, the third rotating shaft 33 is rotatably penetrated through the second fixing plate 36. A second gear 32 is fixedly sleeved on the first end of the third rotating shaft 33. A third toothed plate 31 is installed on the horizontal plate of the U-shaped plate 102 above the second gear 32. The third toothed plate 31 is meshed and connected with the second gear 32; The reciprocating left - and - right movement of the moving plate 2 drives the second gear 32 to rotate reciprocally. The reciprocal rotation of the second gear 32 drives the third rotating shaft 33 to rotate reciprocally. The reciprocal rotation of the third rotating shaft 33 drives the third rotating rod 34 to rotate reciprocally. The reciprocal rotation of the third rotating rod 34 drives the fourth rotating rod 35 to rotate reciprocally. The reciprocal rotation of the fourth rotating rod 35 drives the rotating pipe 37 to swing. The swing of the rotating pipe 37 drives the shunt pipe 1010 to rotate reciprocally. The reciprocal rotation of the shunt pipe 1010 drives the fumigation nozzle 3 to swing. The swing of the fumigation nozzle 3 is used to increase the range of dynamic fumigation of the patient's back skin, prevent the relatively precise arrangement of the grilles, and intend to expand the contact area with the human body to reduce local pressure. This will further cause the reduction of the contact area between the drug and the skin. And during the fumigation process, the long - term single - position compression between the grilles and the skin will lead to poor blood circulation, which further accelerates the patient's recovery; The knocking mechanism includes a knocking head 4, a first bevel gear 41, a second bevel gear 42, a fourth rotating shaft 43, a fifth rotating rod 44, a sixth rotating rod 45, a fifth rotating shaft 46, a seventh rotating rod 47, a second moving rod 48, a rotating plate 49, and a third fixing plate 410; Above the moving plates 2 on both sides of the third through - groove, third fixing plates 410 are installed respectively. A plurality of knocking heads 4 are connected to the lower parts of the third fixing plates 410 respectively, and the plurality of knocking heads 4 all slide through the moving plates 2; The first end of the third rotating shaft 33 penetrates through the second gear 32 and is fixedly sleeved with a first bevel gear 41. A meshing second bevel gear 42 is installed on one side of the first bevel gear 41. The first end of a fourth rotating shaft 43 is connected to the second bevel gear 42. The second end of the fourth rotating shaft 43 rotates through the first moving rod 212 and is vertically connected to the first end of a fifth rotating rod 44. The second end of the fifth rotating rod 44 is rotatably connected to the first end of a sixth rotating rod 45; The first end of a fifth rotating shaft 46 is rotatably connected to the first moving rod 212 below the fifth rotating rod 44. The second end of the fifth rotating shaft 46 is vertically connected to the middle part of a rotating plate 49. The fifth rotating shaft 46 is used to install the rotating plate 49. The two ends of the rotating plate 49 are respectively rotatably connected to the first ends of two seventh rotating rods 47. The second ends of the two seventh rotating rods 47 are hinged to the first ends of two second moving rods 48 respectively. The second ends of the two second moving rods 48 are respectively hinged to the third fixing plates 410. Specifically, the two seventh rotating rods 47 are arranged diagonally; The second end of the sixth rotating rod 45 is hinged to the connection part of the rotating plate 49 and the seventh rotating rod 47 close to the first moving rod 212; Preferably, the third rotating shaft 33 reciprocally rotates to drive the first bevel gear 41 to reciprocally rotate, the first bevel gear 41 reciprocally rotates to drive the second bevel gear 42 to reciprocally rotate, the second bevel gear 42 reciprocally rotates to drive the fourth rotating shaft 43 to reciprocally rotate, the fourth rotating shaft 43 reciprocally rotates to drive the fifth rotating rod 44 to reciprocally rotate, the fifth rotating rod 44 reciprocally rotates to drive the sixth rotating rod 45 to reciprocally rotate, the sixth rotating rod 45 reciprocally rotates to drive the rotating plate 49 to swing around the fifth rotating shaft 46, the rotating plate 49 swinging around the fifth rotating shaft 46 drives the two seventh rotating rods 47 to rotate respectively, the two seventh rotating rods 47 rotating drive the two second moving rods 48 to reciprocally move up and down, the two second moving rods 48 reciprocally moving up and down drive the two third fixing plates 410 to reciprocally move up and down, the two third fixing plates 410 reciprocally moving up and down drive several knocking heads 4 at both ends to reciprocally knock up and down alternately. The several knocking heads 4 at both ends reciprocally knocking up and down alternately can, while fumigating the patient's back, knock and massage the patient's back, thereby accelerating the effective penetration of drug ions, enabling the medicinal power to directly reach the lesion, maintaining a relatively high concentration of the drug at the affected part, effectively improving the treatment effect of the patient, making the treatment effect on the patient significant, and increasing the practicability of the device; A first T-shaped sliding groove is provided on the first fixing plate 23, a first T-shaped protrusion matching with the first T-shaped sliding groove is installed on the moving frame 24, and the first T-shaped protrusion is slidably connected and arranged in the first T-shaped sliding groove; the cooperation of the first T-shaped sliding groove and the first T-shaped protrusion ensures the smooth sliding of the moving frame 24 on the first fixing plate 23; Second T-shaped sliding grooves are provided on both vertical plates of the U-shaped plate 102, second T-shaped protrusions matching with the second T-shaped sliding grooves are installed on the moving plate 2, and the second T-shaped protrusions are slidably connected and arranged in the second T-shaped sliding grooves; the cooperation of the second T-shaped sliding grooves and the second T-shaped protrusions ensures the smooth sliding of the moving plate 2 on both vertical plates of the U-shaped plate 102.
[0019] The using method of the present invention: When it is necessary to fumigate the back skin of a patient, the patient lies prone on the bed board 1 between the two vertical plates of the U-shaped plate 102. Then, the medical staff fills an appropriate amount of liquid medicine into the fumigation medicine box 107 through the filling port 108. Next, the medical staff rotates the rotating handle 106, the rotation of the rotating handle 106 drives the threaded rod 105 to rotate, and the rotation of the threaded rod 105 drives the U-shaped plate 102 to move. The movement of the U-shaped plate 102 is used to adjust the distance between the fumigation nozzle 3 and the back skin of the patient, thereby improving the overall fumigation effect; Then, the medical staff simultaneously turns on the fumigation nozzle 3 and the driving member 21; The driving member 21 drives the first rotating shaft 22 to rotate. The rotation of the first rotating shaft 22 drives the sector gear 25 to rotate. The rotation of the sector gear 25 drives the two first toothed plates 26 to reciprocate back and forth. The back-and-forth reciprocation of the two first toothed plates 26 drives the moving frame 24 to reciprocate back and forth. The back-and-forth reciprocation of the moving frame 24 drives the second toothed plate 27 to reciprocate back and forth. The back-and-forth reciprocation of the second toothed plate 27 drives the first gear 28 to rotate reciprocally. The reciprocal rotation of the first gear 28 drives the second rotating shaft 29 to rotate reciprocally. The reciprocal rotation of the second rotating shaft 29 drives the first rotating rod 210 to rotate reciprocally. The reciprocal rotation of the first rotating rod 210 drives the second rotating rod 211 to rotate reciprocally. The reciprocal rotation of the second rotating rod 211 drives the first moving rod 212 to reciprocate left and right. The reciprocal left and right movement of the first moving rod 212 drives the moving plate 2 to reciprocate left and right. The reciprocal left and right movement of the moving plate 2 drives the shunt pipe 1010 to reciprocate left and right. The reciprocal left and right movement of the shunt pipe 1010 drives the fumigation nozzle 3 to reciprocate left and right. The reciprocal left and right movement of the fumigation nozzle 3 is used to dynamically fumigate the back skin of the patient, avoiding the situation that the direction of the fumigation vapor jet is relatively fixed during fumigation, causing discomfort to the back skin of the patient and resulting in poor fumigation effect; Meanwhile, since a second fixing plate 36 is installed on the outer side of the moving plate 2 at the rear side of the first moving rod 212, a third rotating shaft 33 is rotatably penetrated through the second fixing plate 36. A second gear 32 is fixedly sleeved on the first end of the third rotating shaft 33, and a third toothed plate 31 is installed on the horizontal plate of the U-shaped plate 102 above the second gear 32. The third toothed plate 31 is meshed and connected with the second gear 32; The reciprocating left and right movement of the moving plate 2 drives the second gear 32 to rotate reciprocally. The reciprocal rotation of the second gear 32 drives the third rotating shaft 33 to rotate reciprocally. The reciprocal rotation of the third rotating shaft 33 drives the third rotating rod 34 to rotate reciprocally. The reciprocal rotation of the third rotating rod 34 drives the fourth rotating rod 35 to rotate reciprocally. The reciprocal rotation of the fourth rotating rod 35 drives the rotating pipe 37 to swing. The swing of the rotating pipe 37 drives the shunt pipe 1010 to rotate reciprocally. The reciprocal rotation of the shunt pipe 1010 drives the fumigation nozzle 3 to swing. The swing of the fumigation nozzle 3 is used to increase the range of dynamic fumigation of the back skin of the patient, preventing the arrangement of the gratings from being relatively precise, intending to expand the contact area with the human body to reduce local pressure, which will further cause the reduction of the contact area between the drug and the skin, and during the fumigation process, the long-term single-position compression between the gratings and the skin will cause poor blood circulation, further accelerating the recovery of the patient; Meanwhile, the reciprocating rotation of the third rotating shaft 33 drives the reciprocating rotation of the first bevel gear 41. The reciprocating rotation of the first bevel gear 41 drives the reciprocating rotation of the second bevel gear 42. The reciprocating rotation of the second bevel gear 42 drives the reciprocating rotation of the fourth rotating shaft 43. The reciprocating rotation of the fourth rotating shaft 43 drives the reciprocating rotation of the fifth rotating rod 44. The reciprocating rotation of the fifth rotating rod 44 drives the reciprocating rotation of the sixth rotating rod 45. The reciprocating rotation of the sixth rotating rod 45 drives the swinging of the rotating plate 49 around the fifth rotating shaft 46. The swinging of the rotating plate 49 around the fifth rotating shaft 46 drives the rotation of the two seventh rotating rods 47 respectively. The rotation of the two seventh rotating rods 47 drives the reciprocating up-and-down movement of the two second moving rods 48. The reciprocating up-and-down movement of the two second moving rods 48 drives the reciprocating up-and-down movement of the two third fixing plates 410. The reciprocating up-and-down movement of the two third fixing plates 410 drives the reciprocating up-and-down alternating knocking of a number of knocking heads 4 at both ends. The reciprocating up-and-down alternating knocking of a number of knocking heads 4 at both ends can perform knocking massage on the patient's back while fumigating the patient's back, thereby accelerating the effective penetration of drug ions, enabling the medicinal power to reach the lesion directly, maintaining a high concentration of the drug at the affected part, effectively improving the treatment effect on the patient, being remarkable for the treatment effect on the patient, and increasing the practicality of the device.
[0020] By setting the fumigation mechanism, the present invention realizes the reciprocating left-and-right movement of the fumigation nozzle for dynamically fumigating the back skin of the patient, avoiding the situation that the direction of the fumigated steam spray is relatively fixed during fumigation, causing discomfort to the back skin of the patient and resulting in poor fumigation effect; by setting the swinging mechanism, the present invention realizes that while the fumigation nozzle reciprocates left and right for dynamically fumigating the back skin of the patient, the fumigation nozzle swings to increase the range of dynamic fumigation of the back skin of the patient, preventing the relatively precise arrangement of the grilles, intending to expand the contact area with the human body to reduce local pressure, which will further cause the reduction of the contact area between the drug and the skin, and during the fumigation process, the long-term single-position compression between the grilles and the skin will cause poor blood circulation, further accelerating the patient's recovery; by setting the knocking mechanism, the present invention realizes that while the fumigation nozzle reciprocates left and right for dynamically fumigating the back skin of the patient and the fumigation nozzle swings to increase the range of dynamic fumigation of the back skin of the patient, the reciprocating up-and-down alternating knocking of a number of knocking heads at both ends can perform knocking massage on the patient's back while fumigating the patient's back, thereby accelerating the effective penetration of drug ions, enabling the medicinal power to reach the lesion directly, maintaining a high concentration of the drug at the affected part, effectively improving the treatment effect on the patient, being remarkable for the treatment effect on the patient, and increasing the practicality of the device; the structure of the present invention is simple and reliable, has a good fumigation treatment effect, is convenient to control, and is suitable for popularization.
[0021] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A fumigation treatment device for Mongolian medicine treatment, characterized in that, It includes a bed board (1), support legs (101), a U-shaped plate (102), a mounting plate (103), a spring telescopic rod (104), a threaded rod (105), a rotating handle (106), and a moving plate (2); Four support legs (101) are respectively provided under the bed board (1). A mounting plate (103) is provided between two support legs (101) on the same side. A through first through groove is provided on the bed board (1) above the mounting plate (103). Two vertical plates of the U-shaped plate (102) respectively slide through the two first through grooves. The first end of a spring telescopic rod (104) is connected to the lower part of one vertical plate of the U-shaped plate (102), and the second end of the spring telescopic rod (104) is connected to the mounting plate (103). The first end of a threaded rod (105) threadedly penetrates through the lower part of the other vertical plate of the U-shaped plate (102), and the second end of the threaded rod (105) rotatably penetrates through the mounting plate (103) and is connected to a rotating handle (106); A moving plate (2) is slidably provided between the two vertical plates of the U-shaped plate (102); A fumigation mechanism for reciprocating fumigation is provided on the moving plate (2); A swinging mechanism for driving swinging fumigation is provided between the moving plate (2) and the fumigation mechanism, and the swinging mechanism is driven by the fumigation mechanism; Knocking mechanisms for alternately knocking and massaging are provided on both sides of the fumigation mechanism, and the knocking mechanisms are driven by the swinging mechanism.
2. The fumigation treatment device for Mongolian medicine treatment according to claim 1, wherein: The fumigation mechanism includes a fumigation medicine box (107), a filling port (108), a delivery hose (109), a shunt pipe (1010), a moving plate (2), a driving member (21), a first rotating shaft (22), a first fixing plate (23), a moving frame (24), a sector gear (25), a first toothed plate (26), a second toothed plate (27), a first gear (28), a second rotating shaft (29), a first rotating rod (210), a second rotating rod (211), a first moving rod (212), a fumigation nozzle (3), and a rotating pipe (37); One end of the cross plate of the U-shaped plate (102) is connected to a first fixing plate (23). A moving frame (24) is slidably provided on the first fixing plate (23). A sector gear (25) is provided in the moving frame (24). The first end of a first rotating shaft (22) is connected to the sector gear (25). The second end of the first rotating shaft (22) rotatably penetrates through the first fixing plate (23) and is connected to the output end of the driving member (21). First toothed plates (26) are provided in the moving frame (24) on both sides of the sector gear (25), and the sector gear (25) is detachably meshed with the two first toothed plates (26) respectively; On the outer side of the moving frame (24) near the horizontal plate of the U-shaped plate (102), a second toothed plate (27) is provided. On the outer side of the second toothed plate (27), a first gear (28) that meshes therewith is provided. A second rotating shaft (29) passes through the first gear (28). The first end of the second rotating shaft (29) is rotatably connected to the first fixed plate (23). The second end of the second rotating shaft (29) is sleeved with the first end of a first rotating rod (210). The second end of the first rotating rod (210) is rotatably connected to the first end of a second rotating rod (211). On the horizontal plate of the U-shaped plate (102) above the moving plate (2), a through second through groove is provided. The first end of a first moving rod (212) is connected to the outside of the moving plate (2) on the side away from the first fixed plate (23). The second end of the first moving rod (212) slidably passes through the second through groove and is rotatably connected to the second end of the second rotating rod (211). On the first fixed plate (23) behind the first gear (28), a fumigation medicine box (107) is provided. On the fumigation medicine box (107), a filling port (108) is provided. A through third through groove is provided in the moving plate (2). A shunt pipe (1010) is rotatably provided in the third through groove. A plurality of fumigation nozzles (3) are respectively provided on the shunt pipe (1010). The first end of a rotating pipe (37) is connected to the shunt pipe (1010) in a through manner behind the plurality of fumigation nozzles (3). The second end of the rotating pipe (37) is connected to the first end of a conveying hose (109) in a through manner. The second end of the conveying hose (109) passes through the first fixed plate (23) and is connected to the bottom of the fumigation medicine box (107) in a through manner. The moving plate (2) works through a moving drive swinging mechanism.
3. The fumigation treatment device for Mongolian medicine treatment according to claim 2, characterized in that: The swinging mechanism includes a third toothed plate (31), a second gear (32), a third rotating shaft (33), a third rotating rod (34), a fourth rotating rod (35), and a second fixed plate (36). A second fixed plate (36) is provided on the outer side of the moving plate (2) behind the first moving rod (212). A third rotating shaft (33) rotatably passes through the second fixed plate (36). The first end of the third rotating shaft (33) is sleeved with a second gear (32). A third toothed plate (31) is provided on the horizontal plate of the U-shaped plate (102) above the second gear (32). The third toothed plate (31) is meshed and connected to the second gear (32). The second end of the third rotating shaft (33) is vertically connected to the first end of a third rotating rod (34). The second end of the third rotating rod (34) is rotatably connected to the first end of a fourth rotating rod (35). The second end of the fourth rotating rod (35) is rotatably connected to the connection part of the rotating pipe (37) and the conveying hose (109). The third rotating shaft (33) works through a rotating drive knocking mechanism.
4. The fumigation treatment device for Mongolian medicine treatment according to claim 3, characterized in that: The knocking mechanism includes a knocking head (4), a first bevel gear (41), a second bevel gear (42), a fourth rotating shaft (43), a fifth rotating rod (44), a sixth rotating rod (45), a fifth rotating shaft (46), a seventh rotating rod (47), a second moving rod (48), a rotating plate (49), and a third fixing plate (410); Above the moving plates (2) on both sides of the third through groove, there are third fixing plates (410) respectively. A plurality of knocking heads (4) are connected below the third fixing plates (410), and the plurality of knocking heads (4) all slide through the moving plates (2); The first end of the third rotating shaft (33) penetrates through the second gear (32) and is sleeved with a first bevel gear (41). A second bevel gear (42) engaged with the first bevel gear (41) is arranged on one side of the first bevel gear (41). The first end of a fourth rotating shaft (43) is connected to the second bevel gear (42). The second end of the fourth rotating shaft (43) rotates through the first moving rod (212) and is vertically connected to the first end of a fifth rotating rod (44). The second end of the fifth rotating rod (44) is rotatably connected to the first end of a sixth rotating rod (45); The first end of a fifth rotating shaft (46) is rotatably connected to the first moving rod (212) below the fifth rotating rod (44). The second end of the fifth rotating shaft (46) is vertically connected to the middle of a rotating plate (49). The first ends of a seventh rotating rod (47) are respectively rotatably connected to both ends of the rotating plate (49). The second end of the seventh rotating rod (47) is hinged to the first end of a second moving rod (48). The second ends of the two second moving rods (48) are respectively hinged to the third fixing plate (410); The second end of the sixth rotating rod (45) is hinged to the joint of the rotating plate (49) and the seventh rotating rod (47) close to the first moving rod (212).
5. The fumigation treatment device for Mongolian medicine treatment according to claim 2, characterized in that: The driving member (21) is a motor.
6. The fumigation treatment device for Mongolian medicine treatment according to claim 2, characterized in that: A first T-shaped sliding groove is provided on the first fixing plate (23). A first T-shaped protrusion matched with the first T-shaped sliding groove is provided on the moving frame (24). The first T-shaped protrusion is slidably connected in the first T-shaped sliding groove.
7. The fumigation treatment device for Mongolian medicine treatment according to claim 2, characterized in that: Second T-shaped sliding grooves are provided on both vertical plates of the U-shaped plate (102). Second T-shaped protrusions matched with the second T-shaped sliding grooves are provided on the moving plates (2). The second T-shaped protrusions are slidably connected in the second T-shaped sliding grooves.